| MOQ: | 1 |
| Price: | Customized |
| Standard Packaging: | Carton |
| Delivery Period: | 20 Days |
| Payment Method: | T/T |
| Supply Capacity: | 20 Sets Per Month |
The IEC 60068-2-75 IK08 5J Spring Impact Hammer Tester is a professional mechanical impact testing instrument designed to assess the resistance of electrical, electronic, lighting, household appliance, EV charging, and industrial equipment enclosures against external mechanical impacts.
Engineered in accordance with IEC 60068-2-75, this impact hammer simulates accidental impacts that products may encounter during transportation, installation, maintenance, and normal operation. The tester delivers a precise 5J impact energy, enabling manufacturers, testing laboratories, certification bodies, and quality control departments to verify compliance with international impact resistance requirements.
With its robust construction, calibrated spring mechanism, and high repeatability, this equipment is widely used for IK code testing, product certification, R&D validation, and routine quality inspections.
The Spring Impact Hammer Tester is ideal for testing:
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| Parameter | Specification |
|---|---|
| Product Name | Spring Impact Hammer Tester |
| Standard | IEC 60068-2-75 |
| Impact Energy | 5J |
| IK Rating | IK08 |
| Impact Element Mass | 1.7 kg |
| Impact Energy Tolerance | Standard compliant |
| Release Method | Spring-loaded mechanical release |
| Impact Direction | Any direction |
| Test Object | Electrical and electronic product enclosures |
| Construction Material | Stainless steel and hardened metal components |
| Calibration | Available upon request |
| Operation | Manual |
| Application Environment | Laboratory and quality control testing |
This tester is designed in accordance with:
The Spring Impact Hammer Tester generates a predetermined impact energy through a calibrated spring mechanism. When released, the hammer strikes the test specimen at a defined force level, simulating real-world mechanical impacts.
The resulting condition of the specimen is evaluated to determine:
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| MOQ: | 1 |
| Price: | Customized |
| Standard Packaging: | Carton |
| Delivery Period: | 20 Days |
| Payment Method: | T/T |
| Supply Capacity: | 20 Sets Per Month |
The IEC 60068-2-75 IK08 5J Spring Impact Hammer Tester is a professional mechanical impact testing instrument designed to assess the resistance of electrical, electronic, lighting, household appliance, EV charging, and industrial equipment enclosures against external mechanical impacts.
Engineered in accordance with IEC 60068-2-75, this impact hammer simulates accidental impacts that products may encounter during transportation, installation, maintenance, and normal operation. The tester delivers a precise 5J impact energy, enabling manufacturers, testing laboratories, certification bodies, and quality control departments to verify compliance with international impact resistance requirements.
With its robust construction, calibrated spring mechanism, and high repeatability, this equipment is widely used for IK code testing, product certification, R&D validation, and routine quality inspections.
The Spring Impact Hammer Tester is ideal for testing:
![]()
| Parameter | Specification |
|---|---|
| Product Name | Spring Impact Hammer Tester |
| Standard | IEC 60068-2-75 |
| Impact Energy | 5J |
| IK Rating | IK08 |
| Impact Element Mass | 1.7 kg |
| Impact Energy Tolerance | Standard compliant |
| Release Method | Spring-loaded mechanical release |
| Impact Direction | Any direction |
| Test Object | Electrical and electronic product enclosures |
| Construction Material | Stainless steel and hardened metal components |
| Calibration | Available upon request |
| Operation | Manual |
| Application Environment | Laboratory and quality control testing |
This tester is designed in accordance with:
The Spring Impact Hammer Tester generates a predetermined impact energy through a calibrated spring mechanism. When released, the hammer strikes the test specimen at a defined force level, simulating real-world mechanical impacts.
The resulting condition of the specimen is evaluated to determine:
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